dm exception store: move cow pointer
[deliverable/linux.git] / drivers / md / dm-snap-persistent.c
CommitLineData
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1/*
2 * Copyright (C) 2001-2002 Sistina Software (UK) Limited.
3 * Copyright (C) 2006-2008 Red Hat GmbH
4 *
5 * This file is released under the GPL.
6 */
7
8#include "dm-exception-store.h"
9#include "dm-snap.h"
10
11#include <linux/mm.h>
12#include <linux/pagemap.h>
13#include <linux/vmalloc.h>
14#include <linux/slab.h>
15#include <linux/dm-io.h>
16
17#define DM_MSG_PREFIX "persistent snapshot"
18#define DM_CHUNK_SIZE_DEFAULT_SECTORS 32 /* 16KB */
19
20/*-----------------------------------------------------------------
21 * Persistent snapshots, by persistent we mean that the snapshot
22 * will survive a reboot.
23 *---------------------------------------------------------------*/
24
25/*
26 * We need to store a record of which parts of the origin have
27 * been copied to the snapshot device. The snapshot code
28 * requires that we copy exception chunks to chunk aligned areas
29 * of the COW store. It makes sense therefore, to store the
30 * metadata in chunk size blocks.
31 *
32 * There is no backward or forward compatibility implemented,
33 * snapshots with different disk versions than the kernel will
34 * not be usable. It is expected that "lvcreate" will blank out
35 * the start of a fresh COW device before calling the snapshot
36 * constructor.
37 *
38 * The first chunk of the COW device just contains the header.
39 * After this there is a chunk filled with exception metadata,
40 * followed by as many exception chunks as can fit in the
41 * metadata areas.
42 *
43 * All on disk structures are in little-endian format. The end
44 * of the exceptions info is indicated by an exception with a
45 * new_chunk of 0, which is invalid since it would point to the
46 * header chunk.
47 */
48
49/*
50 * Magic for persistent snapshots: "SnAp" - Feeble isn't it.
51 */
52#define SNAP_MAGIC 0x70416e53
53
54/*
55 * The on-disk version of the metadata.
56 */
57#define SNAPSHOT_DISK_VERSION 1
58
59struct disk_header {
60 uint32_t magic;
61
62 /*
63 * Is this snapshot valid. There is no way of recovering
64 * an invalid snapshot.
65 */
66 uint32_t valid;
67
68 /*
69 * Simple, incrementing version. no backward
70 * compatibility.
71 */
72 uint32_t version;
73
74 /* In sectors */
75 uint32_t chunk_size;
76};
77
78struct disk_exception {
79 uint64_t old_chunk;
80 uint64_t new_chunk;
81};
82
83struct commit_callback {
84 void (*callback)(void *, int success);
85 void *context;
86};
87
88/*
89 * The top level structure for a persistent exception store.
90 */
91struct pstore {
92 struct dm_snapshot *snap; /* up pointer to my snapshot */
93 int version;
94 int valid;
95 uint32_t exceptions_per_area;
96
97 /*
98 * Now that we have an asynchronous kcopyd there is no
99 * need for large chunk sizes, so it wont hurt to have a
100 * whole chunks worth of metadata in memory at once.
101 */
102 void *area;
103
104 /*
105 * An area of zeros used to clear the next area.
106 */
107 void *zero_area;
108
109 /*
110 * Used to keep track of which metadata area the data in
111 * 'chunk' refers to.
112 */
113 chunk_t current_area;
114
115 /*
116 * The next free chunk for an exception.
117 */
118 chunk_t next_free;
119
120 /*
121 * The index of next free exception in the current
122 * metadata area.
123 */
124 uint32_t current_committed;
125
126 atomic_t pending_count;
127 uint32_t callback_count;
128 struct commit_callback *callbacks;
129 struct dm_io_client *io_client;
130
131 struct workqueue_struct *metadata_wq;
132};
133
134static unsigned sectors_to_pages(unsigned sectors)
135{
136 return DIV_ROUND_UP(sectors, PAGE_SIZE >> 9);
137}
138
139static int alloc_area(struct pstore *ps)
140{
141 int r = -ENOMEM;
142 size_t len;
143
d0216849 144 len = ps->snap->store->chunk_size << SECTOR_SHIFT;
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145
146 /*
147 * Allocate the chunk_size block of memory that will hold
148 * a single metadata area.
149 */
150 ps->area = vmalloc(len);
151 if (!ps->area)
152 return r;
153
154 ps->zero_area = vmalloc(len);
155 if (!ps->zero_area) {
156 vfree(ps->area);
157 return r;
158 }
159 memset(ps->zero_area, 0, len);
160
161 return 0;
162}
163
164static void free_area(struct pstore *ps)
165{
166 vfree(ps->area);
167 ps->area = NULL;
168 vfree(ps->zero_area);
169 ps->zero_area = NULL;
170}
171
172struct mdata_req {
173 struct dm_io_region *where;
174 struct dm_io_request *io_req;
175 struct work_struct work;
176 int result;
177};
178
179static void do_metadata(struct work_struct *work)
180{
181 struct mdata_req *req = container_of(work, struct mdata_req, work);
182
183 req->result = dm_io(req->io_req, 1, req->where, NULL);
184}
185
186/*
187 * Read or write a chunk aligned and sized block of data from a device.
188 */
189static int chunk_io(struct pstore *ps, chunk_t chunk, int rw, int metadata)
190{
191 struct dm_io_region where = {
49beb2b8 192 .bdev = ps->snap->store->cow->bdev,
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193 .sector = ps->snap->store->chunk_size * chunk,
194 .count = ps->snap->store->chunk_size,
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195 };
196 struct dm_io_request io_req = {
197 .bi_rw = rw,
198 .mem.type = DM_IO_VMA,
199 .mem.ptr.vma = ps->area,
200 .client = ps->io_client,
201 .notify.fn = NULL,
202 };
203 struct mdata_req req;
204
205 if (!metadata)
206 return dm_io(&io_req, 1, &where, NULL);
207
208 req.where = &where;
209 req.io_req = &io_req;
210
211 /*
212 * Issue the synchronous I/O from a different thread
213 * to avoid generic_make_request recursion.
214 */
215 INIT_WORK(&req.work, do_metadata);
216 queue_work(ps->metadata_wq, &req.work);
217 flush_workqueue(ps->metadata_wq);
218
219 return req.result;
220}
221
222/*
223 * Convert a metadata area index to a chunk index.
224 */
225static chunk_t area_location(struct pstore *ps, chunk_t area)
226{
227 return 1 + ((ps->exceptions_per_area + 1) * area);
228}
229
230/*
231 * Read or write a metadata area. Remembering to skip the first
232 * chunk which holds the header.
233 */
234static int area_io(struct pstore *ps, int rw)
235{
236 int r;
237 chunk_t chunk;
238
239 chunk = area_location(ps, ps->current_area);
240
241 r = chunk_io(ps, chunk, rw, 0);
242 if (r)
243 return r;
244
245 return 0;
246}
247
248static void zero_memory_area(struct pstore *ps)
249{
d0216849 250 memset(ps->area, 0, ps->snap->store->chunk_size << SECTOR_SHIFT);
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251}
252
253static int zero_disk_area(struct pstore *ps, chunk_t area)
254{
255 struct dm_io_region where = {
49beb2b8 256 .bdev = ps->snap->store->cow->bdev,
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257 .sector = ps->snap->store->chunk_size * area_location(ps, area),
258 .count = ps->snap->store->chunk_size,
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259 };
260 struct dm_io_request io_req = {
261 .bi_rw = WRITE,
262 .mem.type = DM_IO_VMA,
263 .mem.ptr.vma = ps->zero_area,
264 .client = ps->io_client,
265 .notify.fn = NULL,
266 };
267
268 return dm_io(&io_req, 1, &where, NULL);
269}
270
271static int read_header(struct pstore *ps, int *new_snapshot)
272{
273 int r;
274 struct disk_header *dh;
275 chunk_t chunk_size;
276 int chunk_size_supplied = 1;
277
278 /*
279 * Use default chunk size (or hardsect_size, if larger) if none supplied
280 */
d0216849
JB
281 if (!ps->snap->store->chunk_size) {
282 ps->snap->store->chunk_size = max(DM_CHUNK_SIZE_DEFAULT_SECTORS,
49beb2b8 283 bdev_hardsect_size(ps->snap->store->cow->bdev) >> 9);
d0216849
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284 ps->snap->store->chunk_mask = ps->snap->store->chunk_size - 1;
285 ps->snap->store->chunk_shift = ffs(ps->snap->store->chunk_size)
286 - 1;
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287 chunk_size_supplied = 0;
288 }
289
290 ps->io_client = dm_io_client_create(sectors_to_pages(ps->snap->
d0216849 291 store->chunk_size));
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292 if (IS_ERR(ps->io_client))
293 return PTR_ERR(ps->io_client);
294
295 r = alloc_area(ps);
296 if (r)
297 return r;
298
299 r = chunk_io(ps, 0, READ, 1);
300 if (r)
301 goto bad;
302
303 dh = (struct disk_header *) ps->area;
304
305 if (le32_to_cpu(dh->magic) == 0) {
306 *new_snapshot = 1;
307 return 0;
308 }
309
310 if (le32_to_cpu(dh->magic) != SNAP_MAGIC) {
311 DMWARN("Invalid or corrupt snapshot");
312 r = -ENXIO;
313 goto bad;
314 }
315
316 *new_snapshot = 0;
317 ps->valid = le32_to_cpu(dh->valid);
318 ps->version = le32_to_cpu(dh->version);
319 chunk_size = le32_to_cpu(dh->chunk_size);
320
d0216849 321 if (!chunk_size_supplied || ps->snap->store->chunk_size == chunk_size)
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322 return 0;
323
324 DMWARN("chunk size %llu in device metadata overrides "
325 "table chunk size of %llu.",
326 (unsigned long long)chunk_size,
d0216849 327 (unsigned long long)ps->snap->store->chunk_size);
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328
329 /* We had a bogus chunk_size. Fix stuff up. */
330 free_area(ps);
331
d0216849
JB
332 ps->snap->store->chunk_size = chunk_size;
333 ps->snap->store->chunk_mask = chunk_size - 1;
334 ps->snap->store->chunk_shift = ffs(chunk_size) - 1;
4db6bfe0 335
d0216849 336 r = dm_io_client_resize(sectors_to_pages(ps->snap->store->chunk_size),
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337 ps->io_client);
338 if (r)
339 return r;
340
341 r = alloc_area(ps);
342 return r;
343
344bad:
345 free_area(ps);
346 return r;
347}
348
349static int write_header(struct pstore *ps)
350{
351 struct disk_header *dh;
352
d0216849 353 memset(ps->area, 0, ps->snap->store->chunk_size << SECTOR_SHIFT);
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354
355 dh = (struct disk_header *) ps->area;
356 dh->magic = cpu_to_le32(SNAP_MAGIC);
357 dh->valid = cpu_to_le32(ps->valid);
358 dh->version = cpu_to_le32(ps->version);
d0216849 359 dh->chunk_size = cpu_to_le32(ps->snap->store->chunk_size);
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360
361 return chunk_io(ps, 0, WRITE, 1);
362}
363
364/*
365 * Access functions for the disk exceptions, these do the endian conversions.
366 */
367static struct disk_exception *get_exception(struct pstore *ps, uint32_t index)
368{
369 BUG_ON(index >= ps->exceptions_per_area);
370
371 return ((struct disk_exception *) ps->area) + index;
372}
373
374static void read_exception(struct pstore *ps,
375 uint32_t index, struct disk_exception *result)
376{
377 struct disk_exception *e = get_exception(ps, index);
378
379 /* copy it */
380 result->old_chunk = le64_to_cpu(e->old_chunk);
381 result->new_chunk = le64_to_cpu(e->new_chunk);
382}
383
384static void write_exception(struct pstore *ps,
385 uint32_t index, struct disk_exception *de)
386{
387 struct disk_exception *e = get_exception(ps, index);
388
389 /* copy it */
390 e->old_chunk = cpu_to_le64(de->old_chunk);
391 e->new_chunk = cpu_to_le64(de->new_chunk);
392}
393
394/*
395 * Registers the exceptions that are present in the current area.
396 * 'full' is filled in to indicate if the area has been
397 * filled.
398 */
a159c1ac
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399static int insert_exceptions(struct pstore *ps,
400 int (*callback)(void *callback_context,
401 chunk_t old, chunk_t new),
402 void *callback_context,
403 int *full)
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404{
405 int r;
406 unsigned int i;
407 struct disk_exception de;
408
409 /* presume the area is full */
410 *full = 1;
411
412 for (i = 0; i < ps->exceptions_per_area; i++) {
413 read_exception(ps, i, &de);
414
415 /*
416 * If the new_chunk is pointing at the start of
417 * the COW device, where the first metadata area
418 * is we know that we've hit the end of the
419 * exceptions. Therefore the area is not full.
420 */
421 if (de.new_chunk == 0LL) {
422 ps->current_committed = i;
423 *full = 0;
424 break;
425 }
426
427 /*
428 * Keep track of the start of the free chunks.
429 */
430 if (ps->next_free <= de.new_chunk)
431 ps->next_free = de.new_chunk + 1;
432
433 /*
434 * Otherwise we add the exception to the snapshot.
435 */
a159c1ac 436 r = callback(callback_context, de.old_chunk, de.new_chunk);
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437 if (r)
438 return r;
439 }
440
441 return 0;
442}
443
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444static int read_exceptions(struct pstore *ps,
445 int (*callback)(void *callback_context, chunk_t old,
446 chunk_t new),
447 void *callback_context)
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448{
449 int r, full = 1;
450
451 /*
452 * Keeping reading chunks and inserting exceptions until
453 * we find a partially full area.
454 */
455 for (ps->current_area = 0; full; ps->current_area++) {
456 r = area_io(ps, READ);
457 if (r)
458 return r;
459
a159c1ac 460 r = insert_exceptions(ps, callback, callback_context, &full);
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461 if (r)
462 return r;
463 }
464
465 ps->current_area--;
466
467 return 0;
468}
469
470static struct pstore *get_info(struct dm_exception_store *store)
471{
472 return (struct pstore *) store->context;
473}
474
475static void persistent_fraction_full(struct dm_exception_store *store,
476 sector_t *numerator, sector_t *denominator)
477{
d0216849 478 *numerator = get_info(store)->next_free * store->chunk_size;
49beb2b8 479 *denominator = get_dev_size(store->cow->bdev);
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480}
481
493df71c 482static void persistent_dtr(struct dm_exception_store *store)
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483{
484 struct pstore *ps = get_info(store);
485
486 destroy_workqueue(ps->metadata_wq);
487 dm_io_client_destroy(ps->io_client);
488 vfree(ps->callbacks);
489 free_area(ps);
490 kfree(ps);
491}
492
a159c1ac
JB
493static int persistent_read_metadata(struct dm_exception_store *store,
494 int (*callback)(void *callback_context,
495 chunk_t old, chunk_t new),
496 void *callback_context)
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497{
498 int r, uninitialized_var(new_snapshot);
499 struct pstore *ps = get_info(store);
500
501 /*
502 * Read the snapshot header.
503 */
504 r = read_header(ps, &new_snapshot);
505 if (r)
506 return r;
507
508 /*
509 * Now we know correct chunk_size, complete the initialisation.
510 */
d0216849
JB
511 ps->exceptions_per_area = (ps->snap->store->chunk_size << SECTOR_SHIFT)
512 / sizeof(struct disk_exception);
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513 ps->callbacks = dm_vcalloc(ps->exceptions_per_area,
514 sizeof(*ps->callbacks));
515 if (!ps->callbacks)
516 return -ENOMEM;
517
518 /*
519 * Do we need to setup a new snapshot ?
520 */
521 if (new_snapshot) {
522 r = write_header(ps);
523 if (r) {
524 DMWARN("write_header failed");
525 return r;
526 }
527
528 ps->current_area = 0;
529 zero_memory_area(ps);
530 r = zero_disk_area(ps, 0);
531 if (r) {
532 DMWARN("zero_disk_area(0) failed");
533 return r;
534 }
535 } else {
536 /*
537 * Sanity checks.
538 */
539 if (ps->version != SNAPSHOT_DISK_VERSION) {
540 DMWARN("unable to handle snapshot disk version %d",
541 ps->version);
542 return -EINVAL;
543 }
544
545 /*
546 * Metadata are valid, but snapshot is invalidated
547 */
548 if (!ps->valid)
549 return 1;
550
551 /*
552 * Read the metadata.
553 */
a159c1ac 554 r = read_exceptions(ps, callback, callback_context);
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555 if (r)
556 return r;
557 }
558
559 return 0;
560}
561
a159c1ac
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562static int persistent_prepare_exception(struct dm_exception_store *store,
563 struct dm_snap_exception *e)
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564{
565 struct pstore *ps = get_info(store);
566 uint32_t stride;
567 chunk_t next_free;
49beb2b8 568 sector_t size = get_dev_size(store->cow->bdev);
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569
570 /* Is there enough room ? */
d0216849 571 if (size < ((ps->next_free + 1) * store->chunk_size))
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572 return -ENOSPC;
573
574 e->new_chunk = ps->next_free;
575
576 /*
577 * Move onto the next free pending, making sure to take
578 * into account the location of the metadata chunks.
579 */
580 stride = (ps->exceptions_per_area + 1);
581 next_free = ++ps->next_free;
582 if (sector_div(next_free, stride) == 1)
583 ps->next_free++;
584
585 atomic_inc(&ps->pending_count);
586 return 0;
587}
588
a159c1ac
JB
589static void persistent_commit_exception(struct dm_exception_store *store,
590 struct dm_snap_exception *e,
591 void (*callback) (void *, int success),
592 void *callback_context)
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593{
594 unsigned int i;
595 struct pstore *ps = get_info(store);
596 struct disk_exception de;
597 struct commit_callback *cb;
598
599 de.old_chunk = e->old_chunk;
600 de.new_chunk = e->new_chunk;
601 write_exception(ps, ps->current_committed++, &de);
602
603 /*
604 * Add the callback to the back of the array. This code
605 * is the only place where the callback array is
606 * manipulated, and we know that it will never be called
607 * multiple times concurrently.
608 */
609 cb = ps->callbacks + ps->callback_count++;
610 cb->callback = callback;
611 cb->context = callback_context;
612
613 /*
614 * If there are exceptions in flight and we have not yet
615 * filled this metadata area there's nothing more to do.
616 */
617 if (!atomic_dec_and_test(&ps->pending_count) &&
618 (ps->current_committed != ps->exceptions_per_area))
619 return;
620
621 /*
622 * If we completely filled the current area, then wipe the next one.
623 */
624 if ((ps->current_committed == ps->exceptions_per_area) &&
625 zero_disk_area(ps, ps->current_area + 1))
626 ps->valid = 0;
627
628 /*
629 * Commit exceptions to disk.
630 */
631 if (ps->valid && area_io(ps, WRITE))
632 ps->valid = 0;
633
634 /*
635 * Advance to the next area if this one is full.
636 */
637 if (ps->current_committed == ps->exceptions_per_area) {
638 ps->current_committed = 0;
639 ps->current_area++;
640 zero_memory_area(ps);
641 }
642
643 for (i = 0; i < ps->callback_count; i++) {
644 cb = ps->callbacks + i;
645 cb->callback(cb->context, ps->valid);
646 }
647
648 ps->callback_count = 0;
649}
650
a159c1ac 651static void persistent_drop_snapshot(struct dm_exception_store *store)
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652{
653 struct pstore *ps = get_info(store);
654
655 ps->valid = 0;
656 if (write_header(ps))
657 DMWARN("write header failed");
658}
659
493df71c
JB
660static int persistent_ctr(struct dm_exception_store *store,
661 unsigned argc, char **argv)
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662{
663 struct pstore *ps;
664
665 /* allocate the pstore */
666 ps = kmalloc(sizeof(*ps), GFP_KERNEL);
667 if (!ps)
668 return -ENOMEM;
669
670 ps->snap = store->snap;
671 ps->valid = 1;
672 ps->version = SNAPSHOT_DISK_VERSION;
673 ps->area = NULL;
674 ps->next_free = 2; /* skipping the header and first area */
675 ps->current_committed = 0;
676
677 ps->callback_count = 0;
678 atomic_set(&ps->pending_count, 0);
679 ps->callbacks = NULL;
680
681 ps->metadata_wq = create_singlethread_workqueue("ksnaphd");
682 if (!ps->metadata_wq) {
683 kfree(ps);
684 DMERR("couldn't start header metadata update thread");
685 return -ENOMEM;
686 }
687
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688 store->context = ps;
689
690 return 0;
691}
692
493df71c
JB
693static int persistent_status(struct dm_exception_store *store,
694 status_type_t status, char *result,
695 unsigned int maxlen)
696{
697 int sz = 0;
698
699 return sz;
700}
701
702static struct dm_exception_store_type _persistent_type = {
703 .name = "persistent",
704 .module = THIS_MODULE,
705 .ctr = persistent_ctr,
706 .dtr = persistent_dtr,
707 .read_metadata = persistent_read_metadata,
708 .prepare_exception = persistent_prepare_exception,
709 .commit_exception = persistent_commit_exception,
710 .drop_snapshot = persistent_drop_snapshot,
711 .fraction_full = persistent_fraction_full,
712 .status = persistent_status,
713};
714
715static struct dm_exception_store_type _persistent_compat_type = {
716 .name = "P",
717 .module = THIS_MODULE,
718 .ctr = persistent_ctr,
719 .dtr = persistent_dtr,
720 .read_metadata = persistent_read_metadata,
721 .prepare_exception = persistent_prepare_exception,
722 .commit_exception = persistent_commit_exception,
723 .drop_snapshot = persistent_drop_snapshot,
724 .fraction_full = persistent_fraction_full,
725 .status = persistent_status,
726};
727
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728int dm_persistent_snapshot_init(void)
729{
493df71c
JB
730 int r;
731
732 r = dm_exception_store_type_register(&_persistent_type);
733 if (r) {
734 DMERR("Unable to register persistent exception store type");
735 return r;
736 }
737
738 r = dm_exception_store_type_register(&_persistent_compat_type);
739 if (r) {
740 DMERR("Unable to register old-style persistent exception "
741 "store type");
742 dm_exception_store_type_unregister(&_persistent_type);
743 return r;
744 }
745
746 return r;
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747}
748
749void dm_persistent_snapshot_exit(void)
750{
493df71c
JB
751 dm_exception_store_type_unregister(&_persistent_type);
752 dm_exception_store_type_unregister(&_persistent_compat_type);
4db6bfe0 753}
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